-module(vec@vec3). -compile([no_auto_import, nowarn_unused_vars, nowarn_unused_function, nowarn_nomatch, inline]). -define(FILEPATH, "src/vec/vec3.gleam"). -export([splat/1, from_tuple/1, to_tuple/1, to_list/1, x/1, y/1, z/1, map_x/2, map_y/2, map_z/2, swap_xy/1, swap_xz/1, swap_yz/1, map/2, map2/3, map3/4, result/1]). -export_type([vec3/1]). -if(?OTP_RELEASE >= 27). -define(MODULEDOC(Str), -moduledoc(Str)). -define(DOC(Str), -doc(Str)). -else. -define(MODULEDOC(Str), -compile([])). -define(DOC(Str), -compile([])). -endif. -type vec3(GZA) :: {vec3, GZA, GZA, GZA}. -file("src/vec/vec3.gleam", 16). ?DOC( " Creates a vector with all elements set to a value.\n" "\n" " ## Examples\n" "\n" " ```gleam\n" " assert splat(12) == Vec3(12, 12, 12)\n" " ```\n" ). -spec splat(GZC) -> vec3(GZC). splat(Value) -> {vec3, Value, Value, Value}. -file("src/vec/vec3.gleam", 28). ?DOC( " Converts a tuple of the contained elements into a vector.\n" "\n" " ## Examples\n" "\n" " ```gleam\n" " assert #(12, -34, 420) |> from_tuple == Vec3(12, -34, 420)\n" " ```\n" ). -spec from_tuple({GZE, GZE, GZE}) -> vec3(GZE). from_tuple(Tuple) -> {vec3, erlang:element(1, Tuple), erlang:element(2, Tuple), erlang:element(3, Tuple)}. -file("src/vec/vec3.gleam", 40). ?DOC( " Converts the vector into a tuple of the contained elements.\n" "\n" " ## Examples\n" "\n" " ```gleam\n" " assert Vec3(12, -34, 420) |> to_tuple == #(12, -34, 420)\n" " ```\n" ). -spec to_tuple(vec3(GZG)) -> {GZG, GZG, GZG}. to_tuple(Vector) -> {erlang:element(2, Vector), erlang:element(3, Vector), erlang:element(4, Vector)}. -file("src/vec/vec3.gleam", 52). ?DOC( " Converts the vector into a list of the contained elements.\n" "\n" " ## Examples\n" "\n" " ```gleam\n" " assert Vec3(12, -34, 420) |> to_list == [12, -34, 420]\n" " ```\n" ). -spec to_list(vec3(GZI)) -> list(GZI). to_list(Vector) -> [erlang:element(2, Vector), erlang:element(3, Vector), erlang:element(4, Vector)]. -file("src/vec/vec3.gleam", 64). ?DOC( " Returns the x element in a vector.\n" "\n" " ## Examples\n" "\n" " ```gleam\n" " assert Vec3(12, -34, 420) |> x == 12\n" " ```\n" ). -spec x(vec3(GZL)) -> GZL. x(Vector) -> erlang:element(2, Vector). -file("src/vec/vec3.gleam", 76). ?DOC( " Returns the y element in a vector.\n" "\n" " ## Examples\n" "\n" " ```gleam\n" " assert Vec3(12, -34, 420) |> y == -34\n" " ```\n" ). -spec y(vec3(GZN)) -> GZN. y(Vector) -> erlang:element(3, Vector). -file("src/vec/vec3.gleam", 88). ?DOC( " Returns the z element in a vector.\n" "\n" " ## Examples\n" "\n" " ```gleam\n" " assert Vec3(12, -34, 420) |> z == 420\n" " ```\n" ). -spec z(vec3(GZP)) -> GZP. z(Vector) -> erlang:element(4, Vector). -file("src/vec/vec3.gleam", 100). ?DOC( " Returns a new vector with the x element having had `with` applied to it.\n" "\n" " ## Examples\n" "\n" " ```gleam\n" " assert Vec3(12, -34, 420) |> map_x(fn(n) { n * 2 }) == Vec3(24, -34, 420)\n" " ```\n" ). -spec map_x(vec3(GZR), fun((GZR) -> GZR)) -> vec3(GZR). map_x(Vector, Fun) -> {vec3, Fun(erlang:element(2, Vector)), erlang:element(3, Vector), erlang:element(4, Vector)}. -file("src/vec/vec3.gleam", 112). ?DOC( " Returns a new vector with the y element having had `with` applied to it.\n" "\n" " ## Examples\n" "\n" " ```gleam\n" " assert Vec3(12, -34, 420) |> map_y(fn(n) { n * 2 }) == Vec3(12, -68, 420)\n" " ```\n" ). -spec map_y(vec3(GZU), fun((GZU) -> GZU)) -> vec3(GZU). map_y(Vector, Fun) -> {vec3, erlang:element(2, Vector), Fun(erlang:element(3, Vector)), erlang:element(4, Vector)}. -file("src/vec/vec3.gleam", 124). ?DOC( " Returns a new vector with the z element having had `with` applied to it.\n" "\n" " ## Examples\n" "\n" " ```gleam\n" " assert Vec3(12, -34, 420) |> map_z(fn(n) { n * 2 }) == Vec3(12, -34, 840)\n" " ```\n" ). -spec map_z(vec3(GZX), fun((GZX) -> GZX)) -> vec3(GZX). map_z(Vector, Fun) -> {vec3, erlang:element(2, Vector), erlang:element(3, Vector), Fun(erlang:element(4, Vector))}. -file("src/vec/vec3.gleam", 136). ?DOC( " Returns a new vector with the x and y elements swaped.\n" "\n" " ## Examples\n" "\n" " ```gleam\n" " assert Vec3(12, -34, 420) |> swap_xy == Vec3(-34, 12, 420)\n" " ```\n" ). -spec swap_xy(vec3(HAA)) -> vec3(HAA). swap_xy(Vector) -> {vec3, erlang:element(3, Vector), erlang:element(2, Vector), erlang:element(4, Vector)}. -file("src/vec/vec3.gleam", 148). ?DOC( " Returns a new vector with the x and z elements swaped.\n" "\n" " ## Examples\n" "\n" " ```gleam\n" " assert Vec3(12, -34, 420) |> swap_xz == Vec3(420, -34, 12)\n" " ```\n" ). -spec swap_xz(vec3(HAD)) -> vec3(HAD). swap_xz(Vector) -> {vec3, erlang:element(4, Vector), erlang:element(3, Vector), erlang:element(2, Vector)}. -file("src/vec/vec3.gleam", 160). ?DOC( " Returns a new vector with the y and z elements swaped.\n" "\n" " ## Examples\n" "\n" " ```gleam\n" " assert Vec3(12, -34, 420) |> swap_yz == Vec3(12, 420, -34)\n" " ```\n" ). -spec swap_yz(vec3(HAG)) -> vec3(HAG). swap_yz(Vector) -> {vec3, erlang:element(2, Vector), erlang:element(4, Vector), erlang:element(3, Vector)}. -file("src/vec/vec3.gleam", 173). ?DOC( " Returns a new vector containing only the elements of the first vector after\n" " the function has been applied to each one.\n" "\n" " ## Examples\n" "\n" " ```gleam\n" " assert Vec3(12, -34, 420) |> map(fn(x) { x * 2 }) == Vec3(24, -68, 840)\n" " ```\n" ). -spec map(vec3(HAJ), fun((HAJ) -> HAL)) -> vec3(HAL). map(Vector, Fun) -> {vec3, Fun(erlang:element(2, Vector)), Fun(erlang:element(3, Vector)), Fun(erlang:element(4, Vector))}. -file("src/vec/vec3.gleam", 188). ?DOC( " Combines two vectors into a single vector using the given function.\n" "\n" " ## Examples\n" "\n" " ```gleam\n" " assert\n" " Vec3(12, -34, 420)\n" " |> map2(Vec3(1, 2, 3), fn(x, y) { x * y })\n" " == Vec3(12, -68, 1260)\n" " ```\n" ). -spec map2(vec3(HAN), vec3(HAP), fun((HAN, HAP) -> HAR)) -> vec3(HAR). map2(A, B, Fun) -> {vec3, Fun(erlang:element(2, A), erlang:element(2, B)), Fun(erlang:element(3, A), erlang:element(3, B)), Fun(erlang:element(4, A), erlang:element(4, B))}. -file("src/vec/vec3.gleam", 211). ?DOC( " Combines three vectors into a single vector using the given function.\n" "\n" " ## Examples\n" "\n" " ```gleam\n" " fn linear_interpolation(weight: Float, a: Float, b: Float) -> Float {\n" " a +. { b -. a } *. weight\n" " }\n" "\n" " assert\n" " splat(0.6)\n" " |> map3(\n" " Vec3(1.2, -3.4, 42.0),\n" " Vec3(1.0, 2.1, -5.4),\n" " linear_interpolation,\n" " )\n" " == Vec3(1.08, -0.1, 13.56)\n" " ```\n" ). -spec map3(vec3(HAT), vec3(HAV), vec3(HAX), fun((HAT, HAV, HAX) -> HAX)) -> vec3(HAX). map3(A, B, C, Fun) -> {vec3, Fun(erlang:element(2, A), erlang:element(2, B), erlang:element(2, C)), Fun(erlang:element(3, A), erlang:element(3, B), erlang:element(3, C)), Fun(erlang:element(4, A), erlang:element(4, B), erlang:element(4, C))}. -file("src/vec/vec3.gleam", 234). ?DOC( " Combines a vector of results into a single result. If all elements in the\n" " vector are `Ok` then returns an `Ok` holding the vector of values. If any\n" " element is `Error` then returns the first error.\n" "\n" " ## Examples\n" "\n" " ```gleam\n" " assert Vec3(Ok(12), Ok(-34), Ok(420)) |> result == Ok(Vec3(12, -34, 420))\n" " ```\n" "\n" " ```gleam\n" " assert Vec3(Ok(12), Error(\"foo\"), Error(\"bar\")) |> result == Error(\"foo\")\n" " ```\n" ). -spec result(vec3({ok, HBA} | {error, HBB})) -> {ok, vec3(HBA)} | {error, HBB}. result(Vector) -> case Vector of {vec3, {ok, X}, {ok, Y}, {ok, Z}} -> {ok, {vec3, X, Y, Z}}; {vec3, {error, Error}, _, _} -> {error, Error}; {vec3, _, {error, Error@1}, _} -> {error, Error@1}; {vec3, _, _, {error, Error@2}} -> {error, Error@2} end.